xref: /freebsd/sys/rpc/xdr.h (revision 370c6ad8ce0240dea404b09164528ec7142eb94b)
1dfdcada3SDoug Rabson /*	$NetBSD: xdr.h,v 1.19 2000/07/17 05:00:45 matt Exp $	*/
2dfdcada3SDoug Rabson 
3dfdcada3SDoug Rabson /*
4dfdcada3SDoug Rabson  * Sun RPC is a product of Sun Microsystems, Inc. and is provided for
5dfdcada3SDoug Rabson  * unrestricted use provided that this legend is included on all tape
6dfdcada3SDoug Rabson  * media and as a part of the software program in whole or part.  Users
7dfdcada3SDoug Rabson  * may copy or modify Sun RPC without charge, but are not authorized
8dfdcada3SDoug Rabson  * to license or distribute it to anyone else except as part of a product or
9dfdcada3SDoug Rabson  * program developed by the user.
10dfdcada3SDoug Rabson  *
11dfdcada3SDoug Rabson  * SUN RPC IS PROVIDED AS IS WITH NO WARRANTIES OF ANY KIND INCLUDING THE
12dfdcada3SDoug Rabson  * WARRANTIES OF DESIGN, MERCHANTABILITY AND FITNESS FOR A PARTICULAR
13dfdcada3SDoug Rabson  * PURPOSE, OR ARISING FROM A COURSE OF DEALING, USAGE OR TRADE PRACTICE.
14dfdcada3SDoug Rabson  *
15dfdcada3SDoug Rabson  * Sun RPC is provided with no support and without any obligation on the
16dfdcada3SDoug Rabson  * part of Sun Microsystems, Inc. to assist in its use, correction,
17dfdcada3SDoug Rabson  * modification or enhancement.
18dfdcada3SDoug Rabson  *
19dfdcada3SDoug Rabson  * SUN MICROSYSTEMS, INC. SHALL HAVE NO LIABILITY WITH RESPECT TO THE
20dfdcada3SDoug Rabson  * INFRINGEMENT OF COPYRIGHTS, TRADE SECRETS OR ANY PATENTS BY SUN RPC
21dfdcada3SDoug Rabson  * OR ANY PART THEREOF.
22dfdcada3SDoug Rabson  *
23dfdcada3SDoug Rabson  * In no event will Sun Microsystems, Inc. be liable for any lost revenue
24dfdcada3SDoug Rabson  * or profits or other special, indirect and consequential damages, even if
25dfdcada3SDoug Rabson  * Sun has been advised of the possibility of such damages.
26dfdcada3SDoug Rabson  *
27dfdcada3SDoug Rabson  * Sun Microsystems, Inc.
28dfdcada3SDoug Rabson  * 2550 Garcia Avenue
29dfdcada3SDoug Rabson  * Mountain View, California  94043
30dfdcada3SDoug Rabson  *
31dfdcada3SDoug Rabson  *	from: @(#)xdr.h 1.19 87/04/22 SMI
32dfdcada3SDoug Rabson  *	from: @(#)xdr.h	2.2 88/07/29 4.0 RPCSRC
33dfdcada3SDoug Rabson  * $FreeBSD$
34dfdcada3SDoug Rabson  */
35dfdcada3SDoug Rabson 
36dfdcada3SDoug Rabson /*
37dfdcada3SDoug Rabson  * xdr.h, External Data Representation Serialization Routines.
38dfdcada3SDoug Rabson  *
39dfdcada3SDoug Rabson  * Copyright (C) 1984, Sun Microsystems, Inc.
40dfdcada3SDoug Rabson  */
41dfdcada3SDoug Rabson 
42dfdcada3SDoug Rabson #ifndef _KRPC_XDR_H
43dfdcada3SDoug Rabson #define _KRPC_XDR_H
44dfdcada3SDoug Rabson #include <sys/cdefs.h>
45dfdcada3SDoug Rabson 
46dfdcada3SDoug Rabson /*
47dfdcada3SDoug Rabson  * XDR provides a conventional way for converting between C data
48dfdcada3SDoug Rabson  * types and an external bit-string representation.  Library supplied
49dfdcada3SDoug Rabson  * routines provide for the conversion on built-in C data types.  These
50dfdcada3SDoug Rabson  * routines and utility routines defined here are used to help implement
51dfdcada3SDoug Rabson  * a type encode/decode routine for each user-defined type.
52dfdcada3SDoug Rabson  *
53dfdcada3SDoug Rabson  * Each data type provides a single procedure which takes two arguments:
54dfdcada3SDoug Rabson  *
55dfdcada3SDoug Rabson  *	bool_t
56dfdcada3SDoug Rabson  *	xdrproc(xdrs, argresp)
57dfdcada3SDoug Rabson  *		XDR *xdrs;
58dfdcada3SDoug Rabson  *		<type> *argresp;
59dfdcada3SDoug Rabson  *
60dfdcada3SDoug Rabson  * xdrs is an instance of a XDR handle, to which or from which the data
61dfdcada3SDoug Rabson  * type is to be converted.  argresp is a pointer to the structure to be
62dfdcada3SDoug Rabson  * converted.  The XDR handle contains an operation field which indicates
63dfdcada3SDoug Rabson  * which of the operations (ENCODE, DECODE * or FREE) is to be performed.
64dfdcada3SDoug Rabson  *
65dfdcada3SDoug Rabson  * XDR_DECODE may allocate space if the pointer argresp is null.  This
66dfdcada3SDoug Rabson  * data can be freed with the XDR_FREE operation.
67dfdcada3SDoug Rabson  *
68dfdcada3SDoug Rabson  * We write only one procedure per data type to make it easy
69dfdcada3SDoug Rabson  * to keep the encode and decode procedures for a data type consistent.
70dfdcada3SDoug Rabson  * In many cases the same code performs all operations on a user defined type,
71dfdcada3SDoug Rabson  * because all the hard work is done in the component type routines.
72dfdcada3SDoug Rabson  * decode as a series of calls on the nested data types.
73dfdcada3SDoug Rabson  */
74dfdcada3SDoug Rabson 
75dfdcada3SDoug Rabson /*
76dfdcada3SDoug Rabson  * Xdr operations.  XDR_ENCODE causes the type to be encoded into the
77dfdcada3SDoug Rabson  * stream.  XDR_DECODE causes the type to be extracted from the stream.
78dfdcada3SDoug Rabson  * XDR_FREE can be used to release the space allocated by an XDR_DECODE
79dfdcada3SDoug Rabson  * request.
80dfdcada3SDoug Rabson  */
81dfdcada3SDoug Rabson enum xdr_op {
82dfdcada3SDoug Rabson 	XDR_ENCODE=0,
83dfdcada3SDoug Rabson 	XDR_DECODE=1,
84dfdcada3SDoug Rabson 	XDR_FREE=2
85dfdcada3SDoug Rabson };
86dfdcada3SDoug Rabson 
87dfdcada3SDoug Rabson /*
88dfdcada3SDoug Rabson  * This is the number of bytes per unit of external data.
89dfdcada3SDoug Rabson  */
90dfdcada3SDoug Rabson #define BYTES_PER_XDR_UNIT	(4)
91dfdcada3SDoug Rabson #define RNDUP(x)  ((((x) + BYTES_PER_XDR_UNIT - 1) / BYTES_PER_XDR_UNIT) \
92dfdcada3SDoug Rabson 		    * BYTES_PER_XDR_UNIT)
93dfdcada3SDoug Rabson 
94dfdcada3SDoug Rabson /*
95dfdcada3SDoug Rabson  * The XDR handle.
96dfdcada3SDoug Rabson  * Contains operation which is being applied to the stream,
97dfdcada3SDoug Rabson  * an operations vector for the particular implementation (e.g. see xdr_mem.c),
98dfdcada3SDoug Rabson  * and two private fields for the use of the particular implementation.
99dfdcada3SDoug Rabson  */
100*370c6ad8SPedro F. Giffuni typedef struct XDR {
101dfdcada3SDoug Rabson 	enum xdr_op	x_op;		/* operation; fast additional param */
102dfdcada3SDoug Rabson 	const struct xdr_ops {
103dfdcada3SDoug Rabson 		/* get a long from underlying stream */
104*370c6ad8SPedro F. Giffuni 		bool_t	(*x_getlong)(struct XDR *, long *);
105dfdcada3SDoug Rabson 		/* put a long to " */
106*370c6ad8SPedro F. Giffuni 		bool_t	(*x_putlong)(struct XDR *, const long *);
107dfdcada3SDoug Rabson 		/* get some bytes from " */
108*370c6ad8SPedro F. Giffuni 		bool_t	(*x_getbytes)(struct XDR *, char *, u_int);
109dfdcada3SDoug Rabson 		/* put some bytes to " */
110*370c6ad8SPedro F. Giffuni 		bool_t	(*x_putbytes)(struct XDR *, const char *, u_int);
111dfdcada3SDoug Rabson 		/* returns bytes off from beginning */
112*370c6ad8SPedro F. Giffuni 		u_int	(*x_getpostn)(struct XDR *);
113dfdcada3SDoug Rabson 		/* lets you reposition the stream */
114*370c6ad8SPedro F. Giffuni 		bool_t  (*x_setpostn)(struct XDR *, u_int);
115dfdcada3SDoug Rabson 		/* buf quick ptr to buffered data */
116*370c6ad8SPedro F. Giffuni 		int32_t *(*x_inline)(struct XDR *, u_int);
117dfdcada3SDoug Rabson 		/* free privates of this xdr_stream */
118*370c6ad8SPedro F. Giffuni 		void	(*x_destroy)(struct XDR *);
119*370c6ad8SPedro F. Giffuni 		bool_t	(*x_control)(struct XDR *, int, void *);
120dfdcada3SDoug Rabson 	} *x_ops;
121dfdcada3SDoug Rabson 	char *	 	x_public;	/* users' data */
122dfdcada3SDoug Rabson 	void *		x_private;	/* pointer to private data */
123dfdcada3SDoug Rabson 	char * 		x_base;		/* private used for position info */
124dfdcada3SDoug Rabson 	u_int		x_handy;	/* extra private word */
125dfdcada3SDoug Rabson } XDR;
126dfdcada3SDoug Rabson 
127dfdcada3SDoug Rabson /*
128dfdcada3SDoug Rabson  * A xdrproc_t exists for each data type which is to be encoded or decoded.
129dfdcada3SDoug Rabson  *
130dfdcada3SDoug Rabson  * The second argument to the xdrproc_t is a pointer to an opaque pointer.
131dfdcada3SDoug Rabson  * The opaque pointer generally points to a structure of the data type
132dfdcada3SDoug Rabson  * to be decoded.  If this pointer is 0, then the type routines should
133dfdcada3SDoug Rabson  * allocate dynamic storage of the appropriate size and return it.
134dfdcada3SDoug Rabson  */
135dfdcada3SDoug Rabson #ifdef _KERNEL
136dfdcada3SDoug Rabson typedef	bool_t (*xdrproc_t)(XDR *, void *, ...);
137dfdcada3SDoug Rabson #else
138dfdcada3SDoug Rabson /*
139dfdcada3SDoug Rabson  * XXX can't actually prototype it, because some take three args!!!
140dfdcada3SDoug Rabson  */
141dfdcada3SDoug Rabson typedef	bool_t (*xdrproc_t)(XDR *, ...);
142dfdcada3SDoug Rabson #endif
143dfdcada3SDoug Rabson 
144dfdcada3SDoug Rabson /*
145dfdcada3SDoug Rabson  * Operations defined on a XDR handle
146dfdcada3SDoug Rabson  *
147dfdcada3SDoug Rabson  * XDR		*xdrs;
148dfdcada3SDoug Rabson  * long		*longp;
149dfdcada3SDoug Rabson  * char *	 addr;
150dfdcada3SDoug Rabson  * u_int	 len;
151dfdcada3SDoug Rabson  * u_int	 pos;
152dfdcada3SDoug Rabson  */
153dfdcada3SDoug Rabson #define XDR_GETLONG(xdrs, longp)			\
154dfdcada3SDoug Rabson 	(*(xdrs)->x_ops->x_getlong)(xdrs, longp)
155dfdcada3SDoug Rabson #define xdr_getlong(xdrs, longp)			\
156dfdcada3SDoug Rabson 	(*(xdrs)->x_ops->x_getlong)(xdrs, longp)
157dfdcada3SDoug Rabson 
158dfdcada3SDoug Rabson #define XDR_PUTLONG(xdrs, longp)			\
159dfdcada3SDoug Rabson 	(*(xdrs)->x_ops->x_putlong)(xdrs, longp)
160dfdcada3SDoug Rabson #define xdr_putlong(xdrs, longp)			\
161dfdcada3SDoug Rabson 	(*(xdrs)->x_ops->x_putlong)(xdrs, longp)
162dfdcada3SDoug Rabson 
163dfdcada3SDoug Rabson static __inline int
164dfdcada3SDoug Rabson xdr_getint32(XDR *xdrs, int32_t *ip)
165dfdcada3SDoug Rabson {
166dfdcada3SDoug Rabson 	long l;
167dfdcada3SDoug Rabson 
168dfdcada3SDoug Rabson 	if (!xdr_getlong(xdrs, &l))
169dfdcada3SDoug Rabson 		return (FALSE);
170dfdcada3SDoug Rabson 	*ip = (int32_t)l;
171dfdcada3SDoug Rabson 	return (TRUE);
172dfdcada3SDoug Rabson }
173dfdcada3SDoug Rabson 
174dfdcada3SDoug Rabson static __inline int
175dfdcada3SDoug Rabson xdr_putint32(XDR *xdrs, int32_t *ip)
176dfdcada3SDoug Rabson {
177dfdcada3SDoug Rabson 	long l;
178dfdcada3SDoug Rabson 
179dfdcada3SDoug Rabson 	l = (long)*ip;
180dfdcada3SDoug Rabson 	return xdr_putlong(xdrs, &l);
181dfdcada3SDoug Rabson }
182dfdcada3SDoug Rabson 
183dfdcada3SDoug Rabson #define XDR_GETINT32(xdrs, int32p)	xdr_getint32(xdrs, int32p)
184dfdcada3SDoug Rabson #define XDR_PUTINT32(xdrs, int32p)	xdr_putint32(xdrs, int32p)
185dfdcada3SDoug Rabson 
186dfdcada3SDoug Rabson #define XDR_GETBYTES(xdrs, addr, len)			\
187dfdcada3SDoug Rabson 	(*(xdrs)->x_ops->x_getbytes)(xdrs, addr, len)
188dfdcada3SDoug Rabson #define xdr_getbytes(xdrs, addr, len)			\
189dfdcada3SDoug Rabson 	(*(xdrs)->x_ops->x_getbytes)(xdrs, addr, len)
190dfdcada3SDoug Rabson 
191dfdcada3SDoug Rabson #define XDR_PUTBYTES(xdrs, addr, len)			\
192dfdcada3SDoug Rabson 	(*(xdrs)->x_ops->x_putbytes)(xdrs, addr, len)
193dfdcada3SDoug Rabson #define xdr_putbytes(xdrs, addr, len)			\
194dfdcada3SDoug Rabson 	(*(xdrs)->x_ops->x_putbytes)(xdrs, addr, len)
195dfdcada3SDoug Rabson 
196dfdcada3SDoug Rabson #define XDR_GETPOS(xdrs)				\
197dfdcada3SDoug Rabson 	(*(xdrs)->x_ops->x_getpostn)(xdrs)
198dfdcada3SDoug Rabson #define xdr_getpos(xdrs)				\
199dfdcada3SDoug Rabson 	(*(xdrs)->x_ops->x_getpostn)(xdrs)
200dfdcada3SDoug Rabson 
201dfdcada3SDoug Rabson #define XDR_SETPOS(xdrs, pos)				\
202dfdcada3SDoug Rabson 	(*(xdrs)->x_ops->x_setpostn)(xdrs, pos)
203dfdcada3SDoug Rabson #define xdr_setpos(xdrs, pos)				\
204dfdcada3SDoug Rabson 	(*(xdrs)->x_ops->x_setpostn)(xdrs, pos)
205dfdcada3SDoug Rabson 
206dfdcada3SDoug Rabson #define	XDR_INLINE(xdrs, len)				\
207dfdcada3SDoug Rabson 	(*(xdrs)->x_ops->x_inline)(xdrs, len)
208dfdcada3SDoug Rabson #define	xdr_inline(xdrs, len)				\
209dfdcada3SDoug Rabson 	(*(xdrs)->x_ops->x_inline)(xdrs, len)
210dfdcada3SDoug Rabson 
211dfdcada3SDoug Rabson #define	XDR_DESTROY(xdrs)				\
212dfdcada3SDoug Rabson 	if ((xdrs)->x_ops->x_destroy) 			\
213dfdcada3SDoug Rabson 		(*(xdrs)->x_ops->x_destroy)(xdrs)
214dfdcada3SDoug Rabson #define	xdr_destroy(xdrs)				\
215dfdcada3SDoug Rabson 	if ((xdrs)->x_ops->x_destroy) 			\
216dfdcada3SDoug Rabson 		(*(xdrs)->x_ops->x_destroy)(xdrs)
217dfdcada3SDoug Rabson 
218dfdcada3SDoug Rabson #define XDR_CONTROL(xdrs, req, op)			\
219762169b5SKip Macy 	(((xdrs)->x_ops->x_control == NULL) ? (FALSE) :	\
220762169b5SKip Macy 		(*(xdrs)->x_ops->x_control)(xdrs, req, op))
221dfdcada3SDoug Rabson #define xdr_control(xdrs, req, op) XDR_CONTROL(xdrs, req, op)
222dfdcada3SDoug Rabson 
223dfdcada3SDoug Rabson /*
224dfdcada3SDoug Rabson  * Solaris strips the '_t' from these types -- not sure why.
225dfdcada3SDoug Rabson  * But, let's be compatible.
226dfdcada3SDoug Rabson  */
227dfdcada3SDoug Rabson #define xdr_rpcvers(xdrs, versp) xdr_uint32_t(xdrs, versp)
228dfdcada3SDoug Rabson #define xdr_rpcprog(xdrs, progp) xdr_uint32_t(xdrs, progp)
229dfdcada3SDoug Rabson #define xdr_rpcproc(xdrs, procp) xdr_uint32_t(xdrs, procp)
230dfdcada3SDoug Rabson #define xdr_rpcprot(xdrs, protp) xdr_uint32_t(xdrs, protp)
231dfdcada3SDoug Rabson #define xdr_rpcport(xdrs, portp) xdr_uint32_t(xdrs, portp)
232dfdcada3SDoug Rabson 
233dfdcada3SDoug Rabson /*
234dfdcada3SDoug Rabson  * Support struct for discriminated unions.
235dfdcada3SDoug Rabson  * You create an array of xdrdiscrim structures, terminated with
236dfdcada3SDoug Rabson  * an entry with a null procedure pointer.  The xdr_union routine gets
237dfdcada3SDoug Rabson  * the discriminant value and then searches the array of structures
238dfdcada3SDoug Rabson  * for a matching value.  If a match is found the associated xdr routine
239dfdcada3SDoug Rabson  * is called to handle that part of the union.  If there is
240dfdcada3SDoug Rabson  * no match, then a default routine may be called.
241dfdcada3SDoug Rabson  * If there is no match and no default routine it is an error.
242dfdcada3SDoug Rabson  */
243dfdcada3SDoug Rabson #define NULL_xdrproc_t ((xdrproc_t)0)
244dfdcada3SDoug Rabson struct xdr_discrim {
245dfdcada3SDoug Rabson 	int	value;
246dfdcada3SDoug Rabson 	xdrproc_t proc;
247dfdcada3SDoug Rabson };
248dfdcada3SDoug Rabson 
249dfdcada3SDoug Rabson /*
250dfdcada3SDoug Rabson  * In-line routines for fast encode/decode of primitive data types.
251dfdcada3SDoug Rabson  * Caveat emptor: these use single memory cycles to get the
252dfdcada3SDoug Rabson  * data from the underlying buffer, and will fail to operate
253dfdcada3SDoug Rabson  * properly if the data is not aligned.  The standard way to use these
254dfdcada3SDoug Rabson  * is to say:
255dfdcada3SDoug Rabson  *	if ((buf = XDR_INLINE(xdrs, count)) == NULL)
256dfdcada3SDoug Rabson  *		return (FALSE);
257dfdcada3SDoug Rabson  *	<<< macro calls >>>
258dfdcada3SDoug Rabson  * where ``count'' is the number of bytes of data occupied
259dfdcada3SDoug Rabson  * by the primitive data types.
260dfdcada3SDoug Rabson  *
261dfdcada3SDoug Rabson  * N.B. and frozen for all time: each data type here uses 4 bytes
262dfdcada3SDoug Rabson  * of external representation.
263dfdcada3SDoug Rabson  */
264dfdcada3SDoug Rabson #define IXDR_GET_INT32(buf)		((int32_t)__ntohl((uint32_t)*(buf)++))
265dfdcada3SDoug Rabson #define IXDR_PUT_INT32(buf, v)		(*(buf)++ =(int32_t)__htonl((uint32_t)v))
266dfdcada3SDoug Rabson #define IXDR_GET_U_INT32(buf)		((uint32_t)IXDR_GET_INT32(buf))
267dfdcada3SDoug Rabson #define IXDR_PUT_U_INT32(buf, v)	IXDR_PUT_INT32((buf), ((int32_t)(v)))
268dfdcada3SDoug Rabson 
269dfdcada3SDoug Rabson #define IXDR_GET_UINT32(buf)		((uint32_t)IXDR_GET_INT32(buf))
270dfdcada3SDoug Rabson #define IXDR_PUT_UINT32(buf, v)		IXDR_PUT_INT32((buf), ((int32_t)(v)))
271dfdcada3SDoug Rabson 
272dfdcada3SDoug Rabson #define IXDR_GET_LONG(buf)		((long)__ntohl((uint32_t)*(buf)++))
273dfdcada3SDoug Rabson #define IXDR_PUT_LONG(buf, v)		(*(buf)++ =(int32_t)__htonl((uint32_t)v))
274dfdcada3SDoug Rabson 
275dfdcada3SDoug Rabson #define IXDR_GET_BOOL(buf)		((bool_t)IXDR_GET_LONG(buf))
276dfdcada3SDoug Rabson #define IXDR_GET_ENUM(buf, t)		((t)IXDR_GET_LONG(buf))
277dfdcada3SDoug Rabson #define IXDR_GET_U_LONG(buf)		((u_long)IXDR_GET_LONG(buf))
278dfdcada3SDoug Rabson #define IXDR_GET_SHORT(buf)		((short)IXDR_GET_LONG(buf))
279dfdcada3SDoug Rabson #define IXDR_GET_U_SHORT(buf)		((u_short)IXDR_GET_LONG(buf))
280dfdcada3SDoug Rabson 
281dfdcada3SDoug Rabson #define IXDR_PUT_BOOL(buf, v)		IXDR_PUT_LONG((buf), (v))
282dfdcada3SDoug Rabson #define IXDR_PUT_ENUM(buf, v)		IXDR_PUT_LONG((buf), (v))
283dfdcada3SDoug Rabson #define IXDR_PUT_U_LONG(buf, v)		IXDR_PUT_LONG((buf), (v))
284dfdcada3SDoug Rabson #define IXDR_PUT_SHORT(buf, v)		IXDR_PUT_LONG((buf), (v))
285dfdcada3SDoug Rabson #define IXDR_PUT_U_SHORT(buf, v)	IXDR_PUT_LONG((buf), (v))
286dfdcada3SDoug Rabson 
287dfdcada3SDoug Rabson /*
288dfdcada3SDoug Rabson  * These are the "generic" xdr routines.
289dfdcada3SDoug Rabson  */
290dfdcada3SDoug Rabson __BEGIN_DECLS
291dfdcada3SDoug Rabson extern bool_t	xdr_void(void);
292dfdcada3SDoug Rabson extern bool_t	xdr_int(XDR *, int *);
293dfdcada3SDoug Rabson extern bool_t	xdr_u_int(XDR *, u_int *);
294dfdcada3SDoug Rabson extern bool_t	xdr_long(XDR *, long *);
295dfdcada3SDoug Rabson extern bool_t	xdr_u_long(XDR *, u_long *);
296dfdcada3SDoug Rabson extern bool_t	xdr_short(XDR *, short *);
297dfdcada3SDoug Rabson extern bool_t	xdr_u_short(XDR *, u_short *);
298dfdcada3SDoug Rabson extern bool_t	xdr_int16_t(XDR *, int16_t *);
299dfdcada3SDoug Rabson extern bool_t	xdr_uint16_t(XDR *, uint16_t *);
300dfdcada3SDoug Rabson extern bool_t	xdr_int32_t(XDR *, int32_t *);
301dfdcada3SDoug Rabson extern bool_t	xdr_uint32_t(XDR *, uint32_t *);
302dfdcada3SDoug Rabson extern bool_t	xdr_int64_t(XDR *, int64_t *);
303dfdcada3SDoug Rabson extern bool_t	xdr_uint64_t(XDR *, uint64_t *);
304dfdcada3SDoug Rabson extern bool_t	xdr_bool(XDR *, bool_t *);
305dfdcada3SDoug Rabson extern bool_t	xdr_enum(XDR *, enum_t *);
306dfdcada3SDoug Rabson extern bool_t	xdr_array(XDR *, char **, u_int *, u_int, u_int, xdrproc_t);
307dfdcada3SDoug Rabson extern bool_t	xdr_bytes(XDR *, char **, u_int *, u_int);
308dfdcada3SDoug Rabson extern bool_t	xdr_opaque(XDR *, char *, u_int);
309dfdcada3SDoug Rabson extern bool_t	xdr_string(XDR *, char **, u_int);
310dfdcada3SDoug Rabson extern bool_t	xdr_union(XDR *, enum_t *, char *, const struct xdr_discrim *, xdrproc_t);
311dfdcada3SDoug Rabson extern bool_t	xdr_char(XDR *, char *);
312dfdcada3SDoug Rabson extern bool_t	xdr_u_char(XDR *, u_char *);
313dfdcada3SDoug Rabson extern bool_t	xdr_vector(XDR *, char *, u_int, u_int, xdrproc_t);
314dfdcada3SDoug Rabson extern bool_t	xdr_float(XDR *, float *);
315dfdcada3SDoug Rabson extern bool_t	xdr_double(XDR *, double *);
316dfdcada3SDoug Rabson extern bool_t	xdr_quadruple(XDR *, long double *);
317dfdcada3SDoug Rabson extern bool_t	xdr_reference(XDR *, char **, u_int, xdrproc_t);
318dfdcada3SDoug Rabson extern bool_t	xdr_pointer(XDR *, char **, u_int, xdrproc_t);
319dfdcada3SDoug Rabson extern bool_t	xdr_wrapstring(XDR *, char **);
320dfdcada3SDoug Rabson extern void	xdr_free(xdrproc_t, void *);
321dfdcada3SDoug Rabson extern bool_t	xdr_hyper(XDR *, quad_t *);
322dfdcada3SDoug Rabson extern bool_t	xdr_u_hyper(XDR *, u_quad_t *);
323dfdcada3SDoug Rabson extern bool_t	xdr_longlong_t(XDR *, quad_t *);
324dfdcada3SDoug Rabson extern bool_t	xdr_u_longlong_t(XDR *, u_quad_t *);
325dfdcada3SDoug Rabson extern unsigned long xdr_sizeof(xdrproc_t func, void *data);
326dfdcada3SDoug Rabson __END_DECLS
327dfdcada3SDoug Rabson 
328dfdcada3SDoug Rabson /*
329dfdcada3SDoug Rabson  * Common opaque bytes objects used by many rpc protocols;
330dfdcada3SDoug Rabson  * declared here due to commonality.
331dfdcada3SDoug Rabson  */
332dfdcada3SDoug Rabson #define MAX_NETOBJ_SZ 1024
333dfdcada3SDoug Rabson struct netobj {
334dfdcada3SDoug Rabson 	u_int	n_len;
335dfdcada3SDoug Rabson 	char	*n_bytes;
336dfdcada3SDoug Rabson };
337dfdcada3SDoug Rabson typedef struct netobj netobj;
338dfdcada3SDoug Rabson extern bool_t   xdr_netobj(XDR *, struct netobj *);
339dfdcada3SDoug Rabson 
340dfdcada3SDoug Rabson /*
341c334d2d5SKip Macy  * These are XDR control operators
342c334d2d5SKip Macy  */
343c334d2d5SKip Macy 
344c334d2d5SKip Macy #define	XDR_GET_BYTES_AVAIL 	1
345c334d2d5SKip Macy #define	XDR_PEEK		2
346c334d2d5SKip Macy #define	XDR_SKIPBYTES		3
347c334d2d5SKip Macy 
348c334d2d5SKip Macy struct xdr_bytesrec {
349c334d2d5SKip Macy 	bool_t xc_is_last_record;
350c334d2d5SKip Macy 	size_t xc_num_avail;
351c334d2d5SKip Macy };
352c334d2d5SKip Macy 
353c334d2d5SKip Macy typedef struct xdr_bytesrec xdr_bytesrec;
354c334d2d5SKip Macy 
355c334d2d5SKip Macy 
356c334d2d5SKip Macy /*
357dfdcada3SDoug Rabson  * These are the public routines for the various implementations of
358dfdcada3SDoug Rabson  * xdr streams.
359dfdcada3SDoug Rabson  */
360dfdcada3SDoug Rabson __BEGIN_DECLS
361dfdcada3SDoug Rabson /* XDR using memory buffers */
362dfdcada3SDoug Rabson extern void   xdrmem_create(XDR *, char *, u_int, enum xdr_op);
363dfdcada3SDoug Rabson 
364dfdcada3SDoug Rabson /* XDR using mbufs */
365dfdcada3SDoug Rabson struct mbuf;
366dfdcada3SDoug Rabson extern void   xdrmbuf_create(XDR *, struct mbuf *, enum xdr_op);
367a9148abdSDoug Rabson extern void   xdrmbuf_append(XDR *, struct mbuf *);
368a9148abdSDoug Rabson extern struct mbuf * xdrmbuf_getall(XDR *);
369dfdcada3SDoug Rabson 
370dfdcada3SDoug Rabson /* XDR pseudo records for tcp */
371dfdcada3SDoug Rabson extern void   xdrrec_create(XDR *, u_int, u_int, void *,
372dfdcada3SDoug Rabson 			    int (*)(void *, void *, int),
373dfdcada3SDoug Rabson 			    int (*)(void *, void *, int));
374dfdcada3SDoug Rabson 
375dfdcada3SDoug Rabson /* make end of xdr record */
376dfdcada3SDoug Rabson extern bool_t xdrrec_endofrecord(XDR *, int);
377dfdcada3SDoug Rabson 
378dfdcada3SDoug Rabson /* move to beginning of next record */
379dfdcada3SDoug Rabson extern bool_t xdrrec_skiprecord(XDR *);
380dfdcada3SDoug Rabson 
381dfdcada3SDoug Rabson /* true if no more input */
382dfdcada3SDoug Rabson extern bool_t xdrrec_eof(XDR *);
383dfdcada3SDoug Rabson extern u_int xdrrec_readbytes(XDR *, caddr_t, u_int);
384dfdcada3SDoug Rabson __END_DECLS
385dfdcada3SDoug Rabson 
386dfdcada3SDoug Rabson #endif /* !_KRPC_XDR_H */
387